Title of article
Time as a dynamical variable in quantum decay
Author/Authors
Rafael de la Madrid، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2013
Pages
19
From page
217
To page
235
Abstract
We present a theoretical analysis of quantum decay in which the survival probability is replaced by a decay rate that is equal to the absolute value squared of the wave function in the time representation. The wave function in the time representation is simply the Fourier transform of the wave function in the energy representation, and it is also the probability amplitude generated by the Positive Operator Valued Measure of a time operator. The present analysis endows time with a dynamical character in quantum decay, and it is applicable only when the unstable system is monitored continuously while it decays. When the analysis is applied to the Gamow state, one recovers the exponential decay law. The analysis allows us to interpret the oscillations in the decay rate of the GSI anomaly, of neutral mesons, and of fluorescence quantum beats as the result of the interference of two resonances in the time representation. In addition, the analysis allows us to show that the time of flight of a resonance coincides with its lifetime.
Keywords
resonances , time operators , Time of flight , Continuous measurements , Zeno effect , Gamow states
Journal title
Nuclear physics A
Serial Year
2013
Journal title
Nuclear physics A
Record number
1204371
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